427
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Development of Gender-Friendly Power Ribboner for Extraction of Green Ribbon/Bast from Jute Plants

, ORCID Icon, , , &

References

  • Annual Report 2021-2022. Ministry of Textile. https://www.texmin.nic.in/sites/default/files/AR_Ministry_of_Textiles_%202021-22_Eng.pdf
  • Banik, S., M. K. Basak, D. Paul, P. Nayak, D. Sardar, S. C. Sil, B. C. Sanpui, and A. Ghosh. 2003. Ribbon retting of jute—a prospective and eco-friendly method for improvement of fibre quality. Industrial Crops and Products 17 (3):183–16. doi:10.1016/S0926-6690(02)00097-3.
  • Borkar, U. N., and S. K. Das. 2006. An improved mechanical approach to retting of bast fibre crops-CRIJAF bast fibre extractor. CRIJAF Bulletin 7:8.
  • Chen, L., E. P. Columbus, J. W. Pote, M. J. Fuller, and J. G. Black. 1995. Kenaf bast and core separation. Proceedings International Kenaf Association,” Ladonia, Texas 7:15–23.
  • Coleman, J. S., K. D. M. McConnaughay, and D. D. Ackerly. 1994. Interpreting phenotypic variation in plants. Trends in Ecology & Evolution 9 (5):187–91.
  • Dewangan, K. N., C. Owary, and R. K. Datta. 2010. Anthropometry of male agricultural workers of north-eastern India and its use in design of agricultural tools and equipment. International Journal of Industrial Ergonomics 40 (5):560–73. doi:10.1016/j.ergon.2010.05.006.
  • Fourth Advance Estimates of Production of Oilseeds and Commercial Crops for 2021-22. 2022. Department of Agriculture and Farmers Welfare and Directorate of Economics and Statistics, Ministry of Agriculture and Farmers Welfare, New Delhi.
  • Gite, L. P., and J. Majumder. 2009. Anthropometric and strength data bank of Indian agricultural workers. Developments in Agricultural and Industrial Ergonomics: General Studies 1:1–19.
  • IS: 271. 2020. Grading of White, Tossa and Daisee Uncut Indian Jute. Bureau of Indian Standards, New Delhi.
  • Johansen, C., M. Waseque, M. M. Ahmed, and S. Begum. 1985. Plant growth curves and fibre quality changes of jute (Corchorus spp.) grown in Bangladesh. Field Crops Research 12:387–95. doi:10.1016/0378-4290(85)90083-8.
  • Karim, M., M. A. Hoque, A. Chawdhury, S. Ahmed, A. EL-Sabagh, and A. Hossain. 2021. Design, development, and performance evaluation of a power-operated jute fiber extraction machine. AgriEngineering 3 (2):403–22. doi:10.3390/agriengineering3020027.
  • Kohan, M. I. 1986. The history and development of Nylon-66. High Performance Polymers: Their Origin and Development 19–37.
  • Majumdar, B., S. Das, A. R. Saha, H. Chowdhury, D. K. Kundu, and B. S. Mahapatra. 2013. Improved retting of jute and mesta with microbial formulation (Bulletin No. 04/2013). Central Research Institute for Jute and Allied Fibres, Barrackpore, Kolkata 32.
  • Makanjuola, G. A., T. A. Ayorinde, O. B. Aluko, O. K. Owolarafe, and L. A. Sanni. 2019. Performance evaluation of a kenaf decorticator. Agricultural Engineering International: CIGR Journal 21 (1):192–202.
  • MatWeb. n.d. Overview of materials for Nylon 66/6. https://www.matweb.com/search/DataSheet.aspx?MatGUID=26386631ec1b49eeba62c80a49730dc4&ckck=1
  • Nageshkumar, T., P. Shrivastava, M. Jagadale, V. B. Shambhu, and L. K. Nayak. 2022. FEA technique for design and simulation of sisal decorticator raspador. Journal of Krishi Vigyan 10 (2):173–78. doi:10.5958/2349-4433.2022.00031.9.
  • Naik, R. K., and P. G. Karmakar. 2016. Mechanization of jute cultivation. Agricultural Engineering Today 40 (2):44–49.
  • Norton, R. L. 2006. Machine design: An integrated approach. 3rd ed. New Jersey: Pearson Prentice Hall.
  • Oreko, B. U., S. Okiy, E. Emagbetere, and M. Okwu. 2018. Design and development of plantain fibre extraction machine. Nigerian Journal of Technology 37 (2):397–406. doi:10.4314/njt.v37i2.14.
  • Price Policy for Jute 2022-23 Season. 2021. Commission for Agricultural Costs & Prices (CACP), Department of Agriculture & Farmers Welfare, Ministry of Agriculture & Farmers Welfare, Government of India.
  • Rajpoot, S., S. Saxena, S. Sehgal, S. K. Dubey, K. Choudhary, A. S. Gavli, A. Verma, and S. S. Neetu Ray. 2019. Jute crop production estimation in major states of India: A comparative study of last 6 years’ fasal and des estimate. The International Archives of Photogrammetry, Remote Sensing & Spatial Information Sciences 42:129–36. doi:10.5194/isprs-archives-XLII-3-W6-129-2019.
  • Sadrmanesh, V., and Y. Chen. 2018. Bast fibres: Structure, processing, properties, and applications. International Materials Reviews 64 (7):381–406. doi:10.1080/09506608.2018.1501171.
  • Shambhu, V. B. 2016. Energy use pattern and economic analysis of jute fibre production in India a case study for West Bengal. Agricultural Mechanization in Asia, Africa and Latin America 47 (4):74–81.
  • Shinde, P., P. Magade, and S. B. Magade. 2022. Design, development and testing of banana fiber extraction machine. Mathematical Statistician and Engineering Applications 71 (4):1325–39.
  • Tan, X., K. Guo, D. Zhang, N. Su, D. Man, and X. Yuan. 2019. Design of the lifting ramie decorticator. Journal of Forestry Engineering 4 (3):106–11.
  • Tewari, V. K., R. Ailavadi, K. N. Dewangan, and S. Sharangi. 2007. Rationalized database of Indian agricultural workers for equipment design. Agricultural Engineering International: The CIGR Ejournal 9:1–12. https://hdl.handle.net/1813/10696.
  • Topakci, M., H. K. Celik, M. Canakci, A. E. W. Rennie, I. Akinci, and D. Karayel. 2010. Deep tillage tool optimization by means of finite element method: Case study for a subsoiler tine. Journal of Food, Agriculture & Environment 8 (2):531–36.
  • Vyavahare, R. T., and S. Kallurkar. 2012. Anthropometric and strength data of Indian agricultural workers for equipment design: A review. Agricultural Engineering International: CIGR Journal 14 (4):102–14.